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Changes in taste receptor cell Ca2+i modulate chorda tympani responses to salty and sour taste stimuli

机译:味觉受体细胞Ca2 + i的变化调节了鼓膜对咸味和酸味刺激的反应

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摘要

The relationship between taste receptor cell (TRC) Ca2+ concentration ([Ca2+]i) and rat chorda tympani (CT) nerve responses to salty [NaCl and NaCl+benzamil (Bz)] and sour (HCl, CO2, and acetic acid) taste stimuli was investigated before and after lingual application of ionomycin+Ca2+, 1,2-bis(2-aminophenoxy)ethane-N,N,N′,N′-tetraacetic acid acetoxymethyl ester (BAPTA-AM), (phospholipase C blocker), and thapsigargin (Ca2+-ATPase inhibitor) under open-circuit or lingual voltage-clamp conditions. An increase in TRC [Ca2+]i attenuated the tonic Bz-sensitive NaCl CT response and the apical membrane Na+ conductance. A decrease in TRC [Ca2+]i enhanced the tonic Bz-sensitive and Bz-insensitive NaCl CT responses and apical membrane Na+ conductance but did not affect CT responses to KCl or NH4Cl. An increase in TRC [Ca2+]i did not alter the phasic response but attenuated the tonic CT response to acidic stimuli. A decrease in [Ca2+]i did not alter the phasic response but attenuated the tonic CT response to acidic stimuli. In a subset of TRCs, a positive relationship between [H+]i and [Ca2+]i was obtained using in vitro imaging techniques. inhibited the tonic CT responses to NaCl, and thapsigargin inhibited the tonic CT responses to salty and sour stimuli. The results suggest that salty and sour taste qualities are transduced by [Ca2+]i-dependent and [Ca2+]i-independent mechanisms. Changes in TRC [Ca2+]i in a BAPTA-sensitive cytosolic compartment regulate ion channels and cotransporters involved in the salty and sour taste transduction mechanisms and in neural adaptation. Changes in TRC [Ca2+]i in a separate subcompartment, sensitive to inositol trisphosphate and thapsigargin but inaccessible to BAPTA, are associated with neurotransmitter release.
机译:味觉感受器细胞(TRC)Ca 2 + 浓度([Ca 2 + ] i)与大鼠鼓膜对CT盐性[NaCl和NaCl]神经反应的关系在舌上施用离子霉素+ Ca 2 + ,1,2-双(2-氨基苯氧基)之前和之后,研究了+ benzamil(Bz)]和酸(HCl,CO2和乙酸)的味觉刺激乙烷或N,N,N',N'-四乙酸乙酰氧基甲酯(BAPTA-AM),(磷脂酶C阻滞剂)和毒胡萝卜素(Ca 2 + -ATPase抑制剂)语言钳位条件。 TRC [Ca 2 + ] i的增加减弱了强直性Bz敏感的NaCl CT反应和心尖膜Na + 的电导。 TRC [Ca 2 + ] i的降低增强了补药对Bz敏感和对Bz不敏感的NaCl CT反应和心尖膜Na + 的电导率,但不影响对KCl或NH4Cl。 TRC [Ca 2 + ] i的增加不会改变阶段性反应,但会减弱对酸性刺激的强直性CT反应。 [Ca 2 + ] i的降低不会改变相位反应,但会减弱对酸性刺激的强直性CT反应。在TRC的一个子集中,[H + ] i和[Ca 2 + ] i之间存在正相关关系。抑制补品CT对NaCl的反应,毒胡萝卜素抑制补品CT对咸味和酸味刺激的反应。结果表明,咸和酸味品质是通过[Ca 2 + ] i依赖性和[Ca 2 + ] i无关的机制转导的。 BAPTA敏感性胞质区室中TRC [Ca 2 + ] i的变化可调节离子通道和共转运蛋白,参与咸味和酸味转导机制以及神经适应。在一个单独的小班中,对三磷酸肌醇和毒胡萝卜素敏感但对BAPTA不可及的TRC [Ca 2 + ] i的变化与神经递质的释放有关。

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